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分数阶导数黏弹性饱和土体一维固结半解析解

解益 李培超 汪磊 孙德安

岩土力学2017,Vol.38Issue(11):3240-3246,7.
岩土力学2017,Vol.38Issue(11):3240-3246,7.DOI:10.16285/j.rsm.2017.11.020

分数阶导数黏弹性饱和土体一维固结半解析解

Semi-analytical solution for one-dimensional consolidation of viscoelastic saturated soil with fractional order derivative

解益 1李培超 1汪磊 2孙德安3

作者信息

  • 1. 上海工程技术大学机械工程学院,上海201620
  • 2. 上海工程技术大学城市轨道交通学院,上海201620
  • 3. 上海大学土木工程系,上海200072
  • 折叠

摘要

Abstract

Theory of fractional calculus is introduced to Kelvin-Voigt constitutive model to describe the mechanical behavior of viscoelastic saturated soil.Applying Laplace transforms upon the one-dimensional consolidation equation of saturated soil and the fractional order derivative Kelvin-Voigt constitutive equation,we derived analytical solutions of the effective stress and the settlement in transformed domains.Then the semi-analytical solution of one-dimensional consolidation problem in physical space was obtained after implementing Laplace numerical inversion by using Crump method.As for two classical cases of elasticity and viscoelasticity,the simplified semi-analytical solutions in this study are the same as those of the two classical cases.It indicates that the analytical solutions of two classical cases can be considered as the special cases of the solutions presented in this paper.Last,parameter studies were conducted to analyze the effects of the various parameters on the consolidation settlement.The results show that,in the case of instantaneous loading,the final settlement is independent on the viscosity coefficient and the fractional order,while the consolidation time is influenced greatly by the viscosity coefficient and the fractional order.The present study contributes to further understand the mechanical behavior of the consolidation of viscoelastic saturated soil.

关键词

分数阶导数/黏弹性/饱和土体/一维固结/半解析解

Key words

fractional order derivative/viscoelasticity/saturated soil/one-dimensional consolidation/semi-analytical solution

分类

建筑与水利

引用本文复制引用

解益,李培超,汪磊,孙德安..分数阶导数黏弹性饱和土体一维固结半解析解[J].岩土力学,2017,38(11):3240-3246,7.

基金项目

上海工程技术大学研究生创新项目(No.15ky0119).This work was supported by the Graduate Student Innovation Project of Shanghai University of Engineering Science (15ky0119). (No.15ky0119)

岩土力学

OA北大核心CSCDCSTPCD

1000-7598

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